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Closing the gap between socioeconomic and financial implications of residential and community level hydrogen-based energy systems: Incentives needed for a bridge to the future.

机译:缩小住宅和社区级氢能源系统的社会经济和财务影响之间的差距:通往未来的桥梁所需的激励措施。

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摘要

The use of hydrogen as an energy carrier has the potential to decrease the amount of pollutants emitted to the atmosphere, significantly reduce our dependence on imported oil and resolve geopolitical issues related to energy consumption.;The current status of hydrogen technology makes it prohibitive and financially risky for most investors to commit the money required for large-scale hydrogen production. Therefore, alternative strategies such as small and medium-scale hydrogen applications should be implemented during the early stages of the transition to the hydrogen economy in order to test potential markets and technology readiness.;While many analysis tools have been built to estimate the requirements of the transition to a hydrogen economy, few have focused on small and medium-scale hydrogen production and none has paired financial with socioeconomic costs at the residential level. The computer-based tool (H2POWER) presented in this study calculates the capacity, cost and socioeconomic impact of the systems needed to meet the energy demands of a home or a community using home and neighborhood refueling units, which are systems that can provide electricity and heat to meet the energy demands of either (1) a home and automobile or (2) a cluster of homes and a number of automobiles.;The financial costs of the production, processing and delivery sub-systems that conform the refueling units are calculated using cost data of existing technology and normalizing them to calculate capital and net present cost. The monetary value of the externalities (socioeconomic analysis) caused by each system is calculated by H2POWER through a statistical analysis of the cost associated to various externalities. Additionally, H2POWER calculates the financial impact of different penalties and incentives (such as net metering, low interest loans, fuel taxes, and emission penalties) on the cost of the system from the point of view of a developer and a homeowner.;In order to assess the benefits and costs of hydrogen-based alternatives, H2POWER compares the financial and socioeconomic costs of home and neighborhood refueling units to a baseline of "conventional" sources of residential electricity, space heat, water heat, and vehicle fuel.;The model can also calculate the "gap" between the financial cost of the technology and the environmental cost of the externalities that are generated using conventional energy sources.;H2POWER is a flexible, user-friendly tool that allows the user to specify different production pathways, supplemental power sources (renewable and non-renewable), component characteristics, electricity mixes, and other analysis parameters in order to customize the results to specific projects. The model has also built-in default values for each of the input fields based on national averages, standard technology specifications and input from experts.
机译:使用氢作为能源载体有可能减少排放到大气中的污染物的数量,显着减少我们对进口石油的依赖,并解决与能源消耗有关的地缘政治问题。;氢技术的现状使其成为禁止性的并且在经济上对于大多数投资者来说,冒险承担大规模生产氢气所需的资金是冒险的。因此,在向氢经济过渡的早期阶段,应实施替代策略,例如中小规模的氢应用,以测试潜在的市场和技术就绪性。虽然已经建立了许多分析工具来估算氢的需求在向氢能经济过渡的过程中,很少有人关注中小规模的氢能生产,并且没有人在住宅层面将财务与社会经济成本相结合。本研究中介绍的基于计算机的工具(H2POWER)计算使用家庭和邻里加油装置来满足家庭或社区能源需求所需的系统的容量,成本和社会经济影响。供热以满足(1)家用和汽车的能源需求,或(2)一组房屋和许多汽车的能源需求;计算符合加油单元的生产,加工和交付子系统的财务成本使用现有技术的成本数据并将其标准化以计算资本和净现值。 H2POWER通过对与各种外部性相关的成本进行统计分析,来计算每个系统引起的外部性的货币价值(社会经济分析)。此外,H2POWER从开发商和房主的角度计算了不同的罚款和激励措施(例如净计量,低息贷款,燃油税和排放罚款)对系统成本的财务影响。为了评估氢替代品的收益和成本,H2POWER将家庭和社区加油单元的财务和社会经济成本与居民用电,空间热,水热和车辆燃料的“常规”来源基线进行了比较。还可以计算技术的财务成本与使用常规能源产生的外部性的环境成本之间的“差距”。H2POWER是一种灵活的,用户友好的工具,允许用户指定不同的生产途径,作为补充电源(可再生和不可再生),组件特性,电混合和其他分析参数,以便根据具体情况定制结果ic项目。该模型还具有基于国家平均值,标准技术规范和专家输入的每个输入字段的内置默认值。

著录项

  • 作者

    Verduzco, Laura E.;

  • 作者单位

    The George Washington University.;

  • 授予单位 The George Washington University.;
  • 学科 Environmental Sciences.;Engineering Environmental.;Energy.
  • 学位 D.Sc.
  • 年度 2006
  • 页码 269 p.
  • 总页数 269
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:39:58

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